Ascorbic Acid Integrates the Antagonistic Modulation of Ethylene and Abscisic Acid in the Accumulation of Reactive Oxygen Species
文献类型: 外文期刊
第一作者: Yu, Yanwen
作者: Yu, Yanwen;Wang, Juan;Li, Shenghui;Kakan, Xiamusiya;Wang, Fangfang;Qin, Hua;Huang, Rongfeng;Yu, Yanwen;Wang, Juan;Qin, Hua;Huang, Rongfeng;Zhou, Yun;Miao, Yuchen
作者机构:
期刊名称:PLANT PHYSIOLOGY ( 影响因子:8.34; 五年影响因子:8.972 )
ISSN: 0032-0889
年卷期: 2019 年 179 卷 4 期
页码:
收录情况: SCI
摘要: During plant growth and development, ethylene and abscisic acid (ABA) play important roles and exert synergistic or antagonistic effects on various biological processes, but the detailed mechanism underlying the interaction of the two phytohormones, especially in the regulation of the accumulation of reactive oxygen species (ROS), is largely unclear. Here, we report that ethylene inhibits but ABA promotes the accumulation of ROS in Arabidopsis (Arabidopsis thaliana) seedlings. Furthermore, changes in the biosynthesis of ascorbic acid (AsA) act as a key factor in integrating the interaction of ethylene and ABA in the regulation of ROS levels. We found that ethylene and ABA antagonistically regulate AsA biosynthesis via ETHYLENE-INSENSITIVE3 (EIN3) and ABA INSENSITIVE4 (ABI4), which are key factors in the ethylene and ABA signaling pathways, respectively. In addition, ABI4 is transcriptionally repressed by EIN3 in ethylene-regulated AsA biosynthesis. Via transcriptome analysis and molecular and genetic experiments, we identified VITAMIN C DEFECTIVE2as the direct target of ABI4 in the regulation of AsA biosynthesis and ROS accumulation. Thus, the EIN3-ABI4- VITAMIN C DEFECTIVE2 transcriptional cascade involves a mechanism by which ethylene and ABA antagonistically regulate AsA biosynthesis and ROS accumulation in response to complex environmental stimuli.
分类号:
- 相关文献
作者其他论文 更多>>
-
Research note: Prevalence and genetic characteristics of pathogenic E. coli isolates from domestic pigeons in central China
作者:Wang, Juan;Lu, Qin;Yao, Lun;Zhang, Wenting;Hu, Qiao;Guo, Yunqing;Wen, Guoyuan;Shao, Huabin;Luo, Qingping;Zhang, Tengfei;Wen, Guoyuan;Luo, Qingping
关键词:Pathogenic E. coli; Pigeons; Serotypes; Antibiotic resistance
-
In vitro modeling of feline gut fermentation: a comprehensive analysis of fecal microbiota and metabolic activity
作者:Ren, Qianle;Li, Yuling;Duan, Mingmei;Li, Jinjun;Shi, Fangshu;Li, Xiaoqiong;Ren, Qianle;Li, Yuling;Duan, Mingmei;Li, Jinjun;Shi, Fangshu;Li, Xiaoqiong;Ren, Qianle;Zhou, Yun;Hu, Wanjing;Mao, Junfu
关键词:cat; gut microbiota;
in vitro fermentation; targeted metabolites; SCFAs -
Long-term cadmium stress influenced the immune response of Pardosa pseudoannulata by modulating its gut microbiota and hemolymph metabolome
作者:Li, Jinjin;Zhou, Rong;Peng, Jie;She, Qingling;Yang, Xinyi;Wang, Juan;Wang, Zhi;Peng, Yuan-de;Song, Qisheng
关键词:Pardosa pseudoannulata; Cadmium; Gut microbiota; Hemolymph; Immune system
-
Genome-Wide Analysis of the 12-Oxo-Phytodienoic Acid Reductase Gene Family in Peanut and Functional Characterization of AhOPR6 in Salt Stress
作者:Mou, Yifei;Sun, Quanxi;Wang, Juan;Wang, Qi;Wang, Qianqian;Yan, Caixia;Yuan, Cuiling;Zhao, Xiaobo;Li, Chunjuan;Shan, Shihua;Miao, Haocui
关键词:peanut; 12-oxo-phytodienoic acid reductase; salt stress
-
A simple approach to fabricate chitosan-delivered avermectin controlled release microparticles for improved efficacy and reduced residues
作者:Kong, Xiang-Ping;Li, Wei-Kun;Jiang, Shoulin;Li, Weina;Wang, Juan;Liu, Jun-Hao;Luo, Lan;Zhao, Pengyue;Ge, Jia-Cheng
关键词:Chitosan; Avermectin; Synergistic effect
-
GHMP gene family: identification, evolutionary and expression analysis under various exogenous hormones and abiotic stress in tomato
作者:Yang, Haitao;Bai, Xin;Muhammad, Tayeb;Yang, Tao;Jia, Chunping;Wang, Baike;Yu, Qinghui;Wang, Juan;Bai, Xin
关键词:Tomato; Bioinformatics; GHMP; Hormonal treatments; Abiotic stresses
-
Study on the Ecological Interaction Mechanism of Continuous Cropping Soil Driven by Different Modifiers
作者:Wang, Juan;Wang, Yuanyuan;Tan, Wei;Zhao, Dan;Xu, Chunmei;Wang, Zhiwei;Liu, Siyu;Liu, Yufeng;Kang, Jiayi
关键词:tomato; continuous cropping; soil improvement; metagenomics; soil microorganisms